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Effect of temperature on space charge trapping and conduction in cross-linked polyethylene

机译:温度对交联聚乙烯中空间电荷俘获和传导的影响

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This paper presented the measurement results of space charge distribution and high field conduction in cross-linked polyethylene (XLPE) plate sample at various electric fields for a broad temperature range from 30 to 90 u000b0;C. The temperature effect on charge trapping and transport mechanism is discussed based on estimation of threshold characteristic and apparent mobility. It is shown that the threshold field for space charge accumulation apparently decreased with the temperature, probably associated with acceleration of charge injection and ionic dissociation. The apparent mobility of charges showed an exponential dependence on temperature, which indicates enhancement of charge detrapping and transfer rate at higher temperature. The field dependence of the space charge decreases with the temperature, results in more space charge accumulate at room temperature than at high temperature at certain high field. This behavior indicates that the space charge formation rate increases slower than the charge detrapping rate as the temperature increases. Besides, negative charge is always dominant in the sample at the measuring field and temperature range. This is probably due to stronger electron injection at XLPE-aluminum interface or more negative ion formed by dissociation of chemical species.
机译:本文介绍了交联聚乙烯(XLPE)板样品在30至90 u000b0; C的宽温度范围内在不同电场下的空间电荷分布和高场传导的测量结果。基于对阈值特性和表观迁移率的估计,讨论了温度对电荷俘获和传输机制的影响。结果表明,空间电荷积累的阈值场明显随温度降低,这可能与电荷注入和离子离解的加速有关。电荷的表观迁移率显示出对温度的指数依赖性,这表明在较高温度下电荷的俘获和传输速率增强。空间电荷的场相关性随温度降低,导致在一定的高电场下,室温下积累的空间电荷比高温下更多。此行为表明,随着温度的升高,空间电荷形成速率的增长速度慢于电荷释放速率的增长速度。此外,在测量场和温度范围内,样品中的负电荷始终占主导地位。这可能是由于在XLPE-铝界面上的电子注入更强,或者是由于化学物种的解离形成了更多的负离子。

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